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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Phase Stability and Oxygen Nonstoichiometry of Highly Oxygen-Deficient Perovskite-Type Oxides: A Case Study of (Ba,Sr)(Co,Fe)O_(3-δ)
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Phase Stability and Oxygen Nonstoichiometry of Highly Oxygen-Deficient Perovskite-Type Oxides: A Case Study of (Ba,Sr)(Co,Fe)O_(3-δ)

机译:缺氧钙钛矿型氧化物的相稳定性和氧非化学计量学:(Ba,Sr)(Co,Fe)O_(3-δ)的实例研究

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摘要

Highly oxygen-deficient perovskite-type oxides, such as Ba_(0.5)Sr_(0.5)Co_(0.8)Fe_(0.2)O_(3-δ) (BSCF5582), are excellent mixed ionic and electronic conductors, with high concentrations of mobile oxygen vacancies and electronic charge carriers. Literature data for the oxygen nonstoichiometry δ of BSCFS582 at a given temperature and oxygen partial pressure show considerable scatter. In addition, the decomposition of cubic BSCF5582 (into hexagonal and cubic phases of differing compositions) at temperatures below 1073 K was not taken into account. In this study we investigated the phase stability and the oxygen nonstoichiometry of BSCFSS82 using thermogravim-etry (TG) and coulometric titration (CT). TG experiments, based on rapid temperature jumps, permitted the relative oxygen nonstoichiometry Ad of cubic BSCF5582 to be extracted, free from the effects of the aforementioned slow decomposition. The CT results suggest the existence, at low oxygen partial pressures, of a stoichiometric phase with composition Ba_(0.5)Sr_(0.5)Co_(0.8)Fe_(0.2)O2 in which all the cations are in the lowest oxidation states possible in a solid compound. It is proposed to use this point as a reference to calibrate both CT and TG data, yielding absolute values for 8 for the cubic BSCF5582 without any uncertainties posed by the decomposition. The TG experiments also yielded the decomposition temperature for cubic BSCF as a function of oxygen partial pressure.
机译:高度缺氧的钙钛矿型氧化物,例如Ba_(0.5)Sr_(0.5)Co_(0.8)Fe_(0.2)O_(3-δ)(BSCF5582),是出色的离子和电子混合导体,具有高浓度的移动性氧空位和电子电荷载体。在给定温度和氧气分压下,BSCFS582的氧气非化学计量δ的文献数据显示出相当大的分散性。此外,未考虑在低于1073 K的温度下分解立方BSCF5582(分解为不同组成的六方相和立方相)。在这项研究中,我们使用热重法(TG)和库仑滴定(CT)研究了BSCFSS82的相稳定性和氧非化学计量。 TG实验基于快速的温度跳跃,可以提取立方BSCF5582的相对氧非化学计量比Ad,而不受上述缓慢分解的影响。 CT结果表明,在低氧分压下,存在化学组成为Ba_(0.5)Sr_(0.5)Co_(0.8)Fe_(0.2)O2的化学计量相,其中所有阳离子均处于最低氧化态。固体化合物。建议以此点作为校准CT和TG数据的参考,得出立方BSCF5582的8的绝对值,而分解没有任何不确定性。 TG实验还得出立方BSCF的分解温度是氧分压的函数。

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